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Left Heart›LV Systolic Function & EF
LV Systolic Function & Ejection Fraction
Simpson's biplane, 3D volumes, EF grading by sex
Simpson's Biplane — LV Volumes indexed (ml/m²)▼
MENWOMEN
MeasureNormalMildModSevereNormalMildModSevere
LVEDV34–7475–8990–100>10029–6162–7071–80>80
LVESV11–3132–3839–45>458–2425–3233–40>40
Female partition values may be too small — interpret with other measurements and visual impression
3D Volumes — Upper Limit of Normal▼
MENWOMEN
LVEDV (ml/m²)LVESV (ml/m²)LVEDV (ml/m²)LVESV (ml/m²)
Upper normal79327128
LV Ejection Fraction (%)▼
MENWOMEN
NormalMild ↓Mod ↓Severe ↓NormalMild ↓Mod ↓Severe ↓
EF (%)52–7241–5130–40<3054–7441–5330–40<30
Significant MR: EF <60% is abnormal regardless of sex
Left Heart›LV Diastolic Function
LV Diastolic Function
Diastolic function grading & LAP estimation — standard algorithm
Algorithm Exceptions — Use Special Populations Table Instead▼

This algorithm does not apply to the following:

  • MAC (moderate–severe)
  • Mitral regurgitation (significant)
  • Mitral stenosis (any degree)
  • Atrial fibrillation
  • LVAD (Left Ventricular Assist Device)
  • Non-cardiac pulmonary hypertension
  • Heart transplant (HTX)
  • Pericardial constriction
For alternative parameters in these populations, see Special Populations Diastolic Function →
Step 1 — The Three Variables▼
#VariableAbnormal Threshold
1Reduced e' velocity *Septal ≤6 cm/s · Lateral ≤7 cm/s · Average ≤6.5 cm/s
2Increased E/e'Septal ≥15 · Lateral ≥13 · Average ≥14
3Increased TR velocity / PASPTR velocity ≥2.8 m/s · PASP ≥35 mmHg
* Per ASE 2025: fixed cut-offs apply irrespective of age. Age-specific lower limits of normal may be applied as an alternative where clinically appropriate.
🧮 Interactive Diastolic Function Assessment▼

Answer each question below — the tool follows the same algorithm as the flowchart and gives you the final grade at the end.

Step 1 — Are each of the following abnormal?
Reduced e' velocitySeptal ≤6 · Lateral ≤7 · Average ≤6.5 cm/s
Increased E/e'Septal ≥15 · Lateral ≥13 · Average ≥14
Increased TR velocity / PASPTR velocity ≥2.8 m/s · PASP ≥35 mmHg
Diastolic Function Grading Flowchart▼
All 3 variables normal
↓
Normal LAP
↓
Normal Diastolic Function
Reduced e' only
↓
E/A ≤ 0.8
↓
Grade 1
If symptomatic → consider diastolic exercise echo
E/A > 0.8
↓
proceed to secondary parameters →
Increased TR/PASP only · or Increased E/e' only · or any 2 abnormal variables
↓
Secondary Parameters — need ≥1 of 3
Pulmonary vein S/D ≤0.67
LA reservoir strain (LARS) ≤18%
LAVi >34 ml/m²
Alternatively: IVRT ≤70 ms
If none available/reliable, use Special Populations methods →
None positive
↓
Normal LAP
≥1 present
↓
Increased LAP
(Grade 2 if E/A <2)
3 of the above abnormal
↓
Increased LAP
↓
E/A < 2
↓
Grade 2
(Mild/Mod ↑LAP)
E/A ≥ 2
↓
Grade 3
(Marked ↑LAP)
For the full alternate-pathway table (MAC, significant MR, MS, AF, LVAD, HTX, constriction, non-cardiac PH) see Special Populations Diastolic Function →
Grade Summary▼
GradeDescriptionLAP
Normal DFAll 3 variables normalNormal
Grade 1Impaired relaxation, E/A ≤0.8, no secondary criteria positiveNormal
Grade 2Pseudonormal pattern, E/A <2 with elevated LAPMild–Moderately elevated
Grade 3Restrictive pattern, E/A ≥2 with elevated LAPMarkedly elevated
Grade 1 with symptoms → consider diastolic exercise echocardiography to unmask exertional LAP elevation
Left Heart›Special Populations Diastolic Function
Special Populations — Diastolic Function
Use this table instead of the standard algorithm when any of the listed conditions apply
Why the Standard Algorithm Doesn't Apply▼

The 3-variable LAP estimation algorithm (e', E/e', TR velocity/PASP) assumes a structurally typical mitral valve and LV in sinus rhythm. The following conditions invalidate one or more of its inputs and require alternative or adjunctive parameters:

  • MAC (moderate–severe): annular calcification artificially elevates e' measurement reliability and distorts inflow patterns
  • Significant MR: volume loading elevates LA pressure independent of diastolic relaxation; E velocity dominated by regurgitant volume
  • Mitral stenosis (any degree): transmitral gradient reflects valve obstruction, not LV diastolic properties
  • Atrial fibrillation: no distinct A wave; E/e' and deceleration time-based methods used instead with AF-specific cut-offs
  • LVAD: mechanical unloading alters loading conditions independent of native diastolic function
  • Heart transplant (HTX): altered atrial mechanics and possible rejection-related changes confound standard cut-offs
  • Pericardial constriction: respirophasic ventricular interdependence and septal bounce dominate the physiology
  • Non-cardiac pulmonary hypertension: elevated TR velocity/PASP reflects pulmonary vascular disease, not LAP
Atrial Fibrillation — Alternative Parameters▼
ParameterElevated LAP Suggested
E/e' (septal)≥11–13
IVRT (ms)<65 ms
Deceleration time (ms)<160 ms
Pulmonary vein AR durationShortened systolic fraction
LA reservoir strainReduced
Average over ≥5 cardiac cycles due to beat-to-beat variability in AF
Significant MR — Alternative Parameters▼
ParameterElevated LAP Suggested
Pulmonary vein systolic fraction≤40%
LA reservoir strainReduced (severity-dependent)
Vena contracta-adjusted E velocityInterpret with caution — E often elevated from regurgitant volume alone
e' velocity and E/e' remain relatively load-independent but lose diagnostic precision as MR severity increases
Mitral Stenosis — Approach▼

Standard diastolic function grading is not applicable. LA pressure is presumed elevated proportional to mean transmitral gradient and MVA — see Mitral Stenosis → for grading by mean gradient, MVA and PHT.

MAC, LVAD, HTX, Constriction, Non-cardiac PH▼
PopulationRecommended Approach
MAC (mod–severe)Rely on LA volume/strain and clinical context over annular e' or E/e'
LVADDiastolic indices not validated; assess via right heart catheterisation if needed clinically
Heart transplantUse serial trends rather than single cut-offs; correlate with biopsy/rejection status
Pericardial constrictionAssess respirophasic septal shift, hepatic vein expiratory flow reversal, medial e' > lateral e' (annulus reversus)
Non-cardiac PHTR velocity/PASP unreliable for LAP — rely on e', E/e', LA volume/strain instead
Left Heart›LV Dimensions & Mass
LV Dimensions & Mass
Linear method, indexed values
LV Cavity Dimensions — Indexed (cm/m²)▼
MENWOMEN
NormalMildModSevereNormalMildModSevere
LVEDD2.2–3.03.1–3.33.4–3.6>3.62.3–3.13.2–3.43.5–3.7>3.7
LVESD1.3–2.12.2–2.32.4–2.5>2.51.3–2.12.2–2.32.4–2.6>2.6
LV Wall Thickness & Mass▼
MENWOMEN
NormalMildModSevereNormalMildModSevere
IVS (cm)0.6–1.01.1–1.31.4–1.6>1.60.6–0.91.0–1.21.3–1.5>1.5
PW (cm)0.6–1.01.1–1.31.4–1.6>1.60.6–0.91.0–1.21.3–1.5>1.5
Linear ILVM (g/m²)49–115116–131132–148>14843–9596–108109–121>121
2D ILVM (g/m²)50–102103–116117–130>13044–8889–100101–112>112
🧮 LV Geometry Calculator — Classify Hypertrophy Pattern▼
RWT = (2 × PW) / LVEDD  ·  LVMI = LV Mass / BSA  ·  LV Mass (g) = 0.8 × [1.04 × (LVEDD + IVS + PW)³ − LVEDD³] + 0.6

Measurements

IVS (cm)cm
LVEDD (cm)cm
PW (cm)cm

Patient Details

Sex
BSA (m²)m²
BSA = √(Height(cm) × Weight(kg) / 3600)  (Mosteller)
Height (cm)cm
Weight (kg)kg
Enter measurements above
LV Geometric Pattern Classification▼

LV geometry is classified by combining LV Mass Index (LVMI) and Relative Wall Thickness (RWT). The ASE recommends reporting geometry pattern as a standard component of every echo report.

RWT = (2 × PW) / LVEDD  ·  Normal RWT: 0.32–0.42  ·  Concentric threshold: >0.42
RWT ≤ 0.42
RWT > 0.42
LVMI
Normal
Normal Geometry
Normal mass
Normal wall thickness
Low cardiovascular risk
Concentric Remodelling
Normal mass
Increased wall thickness
Early pressure adaptation
Often hypertension-related
LVMI
Increased
Eccentric LVH
Increased mass
Normal wall thickness
Volume overload pattern
(e.g. AR, MR, dilated CMP)
Concentric LVH
Increased mass
Increased wall thickness
Highest CV risk
(e.g. HTN, AS, HCM)
← Relative Wall Thickness →
Men: LVMI >115 g/m² = LVH  ·  Women: LVMI >95 g/m² = LVH (linear method)
RWT = 2×PW / LVEDD  ·  Concentric geometry = RWT >0.42 regardless of sex or BSA
Source: Lang RM, Badano LP, Mor-Avi V, et al. Recommendations for Cardiac Chamber Quantification by Echocardiography in Adults. J Am Soc Echocardiogr. 2015;28(1):1–39. Fig. 10 & Table 5.
Left Heart›Left Atrium
Left Atrium
Indexed volume & 2D strain — biplane disc summation preferred
ILAV (ml/m²)▼
NormalMildly AbnormalModerately AbnormalSeverely Abnormal
16–3435–4142–48>48
LA Strain — 2D Speckle-Tracking▼

LA mechanics have three phases across the cardiac cycle: reservoir (LV systole), conduit (early-mid diastole), and contractile (late diastole, atrial contraction). Measured by R-R gated speckle-tracking in the apical 4-chamber view (biplane where feasible).

PhaseNormal (mean)Reported Range
Reservoir strain (LASr)
a.k.a. PALS — Peak Atrial Longitudinal Strain
39%30–60% · LLN 23%
Conduit strain (LAScd)23%95% CI 21–25%
Contractile strain (LASct)17%95% CI 16–19%
PALS and reservoir strain (LASr) refer to the same peak value, measured at end of LV systole (aortic valve closure) — the terms are used interchangeably in clinical practice.
Reservoir strain (LASr) is the most clinically validated LA strain parameter. Borderline abnormal: 23–30%. Abnormal: <23%. In the specific context of estimating elevated LV filling pressure, LASr <18% is the recommended cut-off (optimal sensitivity/specificity per multicentre validation).
Source: Thomas JD, Edvardsen T, et al. Clinical Applications of Strain Echocardiography: A Clinical Consensus Statement from the American Society of Echocardiography Developed in Collaboration with EACVI. J Am Soc Echocardiogr. 2025. Normal ranges from individual-patient meta-analysis of 2,542 healthy adults across 40 studies.
Right Heart›RV Size
RV Size
Quantitative parameters; mean ± SD
RV Linear Dimensions (mean ± SD)▼

RV Focused

Basal RV (mm)Mid RV (mm)RV Length (mm)
25–41 (33±4) · Indexed <24 mm/m²19–35 (27±4)59–83 (71±6)

RVOT

PLAX (mm)Proximal (mm)Distal (mm)
20–30 (25±2.5)25–35 (28±3.5)17–27 (22±2.5)

RV Wall Thickness (subcostal)

1–5 mm (3±1 mm)

2D Area (cm²/m²)

MENWOMEN
RVEDARVESARVEDARVESA
Range5–12.6 (8.8±1.9)3–15 (9±3)4.5–11.5 (8.0±1.75)1.6–6.4 (4.0±1.2)

3D Volume (ml/m²)

MENWOMEN
RVEDVRVESVRVEDVRVESV
Range35–87 (61±13)10–44 (27±8.5)32–74 (53±10.5)8–36 (22±7)
±1.96 SD = 95% CI cutoff for abnormal; +2 SD above mean ≈ dilated/thickened
Right Heart›RV Systolic Function
RV Systolic Function
Use multiple parameters in combination
RV Systolic Parameters▼
ParameterNormalAbnormal
RVFAC (%)≥35 (49±7)<35
TAPSE (mm)≥17 (24±3.5)<17
Pulsed DTI S' (cm/s)≥9.5 (14.1±2.3)<9.5
3D RVEF (%)≥45 (58±6.5)<45
MPI (PW)≤0.43 (0.26±0.085)>0.43
MPI (DTI)≤0.54 (0.38±0.08)>0.54
RV Free Wall Strain (%)−29±4.5<−20
Values may vary by vendor and software version
Right Heart›RV Diastolic Function
RV Diastolic Function
RV Diastolic Parameters▼

Normal Values

E/ADT (ms)E/e'E' (cm/s)
1.4±0.3 (range 0.8–2.0)180±31 (range 119–242)4.0±1.0 (abnormal >6.0)14.0±3.1 (abnormal <7.8)

Grading

GradeCriteria
Impaired RelaxationTricuspid E/A <0.8
PseudonormalE/A 0.8–2.1 + E/e' >6 or hepatic vein diastolic predominance
RestrictiveE/A >2.1 + deceleration time <120 ms
RV diastolic function influenced by LH systolic and diastolic function. Report systemic BP also.
Right Heart›Right Atrium & RAP
Right Atrium & RAP Estimation
Right Atrial Volume (ml/m²)▼
MenWomen
NormalDilatedNormalDilated
RAV index (ml/m²)<39 (25±7)≥39<33 (21±6)≥33
2D area (cm²)<18≥18<18≥18
2D planimetry area ≥18 cm² is an alternative marker of RA enlargement when volumetric indexing is not available · Measured in apical 4-chamber at end-systole (maximum RA size)
RAP Estimation — IVC Method▼
Normal 3 mmHgIntermediate 8 mmHgHigh 15 mmHg
IVC diameter (cm)≤2.1≤2.1>2.1>2.1
Collapse with sniff>50%<50%>50%<50%

Secondary indices of ↑ RAP

  • Restrictive filling (right heart)
  • Tricuspid E/e' >6
  • SSF ratio <55%
Athletes: IVC may be dilated with normal RAP · Ventilated patients: IVC unreliable
Aorta›Aortic Root
Aortic Root Measurements
Leading edge to leading edge at end diastole (except annulus: mid-systole, inner edge to inner edge)
Aortic Dimensions▼
LocationMenWomen
Absolute (cm)Indexed (cm/m²)Absolute (cm)Indexed (cm/m²)
Aortic Annulus2.6±0.3 (dil >3.2)1.3±0.1 (dil >1.5)2.3±0.2 (dil >2.7)1.3±0.1 (dil >1.5)
Sinus of Valsalva3.4±0.3 (dil >4.0)1.7±0.2 (dil >2.1)3.0±0.3 (dil >3.6)1.8±0.2 (dil >2.2)
Sinotubular Junction2.9±0.3 (dil >3.5)1.5±0.2 (dil >1.9)2.6±0.3 (dil >3.2)1.5±0.2 (dil >1.9)
Prox Ascending3.0±0.4 (dil >3.8)1.5±0.2 (dil >1.9)2.7±0.4 (dil >3.5)1.6±0.3 (dil >2.2)
Aortic Arch2.2–3.6 cm2.2–3.6 cm
Descending Aorta2.0–3.0 cm2.0–3.0 cm
Dilation defined as above upper 95% CI · Values only valid when measured by the specified technique
Rule of +2 Standard Deviations: Dilation is defined as exceeding mean + 2SD for sex (upper 95% CI). The "dil" threshold shown in each cell = mean + (2 × SD). Example: Men's sinus of Valsalva mean 3.4 ± 0.3 cm → dilation threshold = 3.4 + (2 × 0.3) = 4.0 cm. Apply the same rule to all locations — a result above this value is dilated regardless of absolute size alone.
Z-Score — Age & BSA Adjusted Aortic Root▼

Absolute and indexed measurements may be insufficient in young patients, small adults, or suspected connective tissue disorders (Marfan syndrome, Loeys-Dietz, Ehlers-Danlos). Z-scores normalise aortic root measurements to age, sex, and BSA simultaneously.

Predicted SoV = 2.423 + (Age × 0.009) + (BSA × 0.461) − (Sex × 0.267)
Sex: Men = 1, Women = 2  ·  SEE = 0.261 cm  ·  BSA by DuBois method
Z-score = (Measured SoV − Predicted SoV) / 0.261
Age (years)yrs
Sex
BSA (m²)m²
Measured SoV (cm)cm
Sinuses of Valsalva (SoV) measured at end diastole, leading edge to leading edge (PLAX)
Enter all values above
Z-ScoreInterpretation
Z < 1.96Normal for age and body size
Z ≥ 1.96Dilated — required criterion for aortic root dilation in Ghent nosology (Marfan diagnosis)
Z ≥ 3Borderline threshold for Marfan in absence of FBN1 mutation — monitor closely
Z ≥ 4.5Severe dilation — significant aneurysm phenotype, surgical consideration
Marfan Foundation Adult Z-Score Calculator (Devereux / Roman nomograms · Sinuses of Valsalva · Age ≥15 years · BSA by DuBois method)
→ marfan.org/dx/z-score-adults/
Paediatric Z-Score Calculator (Colan nomograms · Age <15 years)
→ marfan.org/dx/zscore-children/
Ghent Nosology — Revised Marfan Diagnostic Criteria (2010)
Aortic Root (Z)Additional FeatureDiagnosis
Z ≥ 1.96Ectopia lentisMarfan syndrome
Z ≥ 1.96FBN1 mutation (bona fide)Marfan syndrome
Z ≥ 1.96Systemic score ≥ 7 pointsMarfan syndrome
Z < 2FBN1 + systemic featuresPotential MFS — monitor
Z < 2Systemic score <7, no FBN1Non-specific CTD
Loeys BL et al. Revised Ghent nosology for Marfan syndrome. J Med Genet. 2010;47:476–485
Native Valves›Aortic Stenosis
Aortic Stenosis
AHA/ACC and ESC gradient thresholds differ — note which guideline applies
AS Grading Parameters▼
ParameterMildModerateSevere
Peak velocity (m/s)2.6–2.93.0–4.0>4.0
Mean gradient AHA/ACC (mmHg)<2020–40>40
Mean gradient ESC (mmHg)<3030–50>50
AVA (cm²)>1.51.0–1.5<1.0
AVA indexed (cm²/m²)>0.850.6–0.85<0.6
DSI>0.50.25–0.5<0.25
Index AVA for BSA when BSA <1.6 m² or >2.0 m²
🧮 Stroke Volume Index (SVi) Calculator▼

Calculate SVi to determine flow status. SVi ≤35 ml/m² = low flow — consider low-flow, low-gradient AS subtype.

SV = CSALVOT × VTILVOT  ·  SVi = SV / BSA
LVOT Ø (cm)cm
LVOT VTI (cm)cm
BSA (m²)m²
BSA can be calculated from height + weight in the LV Geometry Calculator
Enter values above
AS Flow & Gradient Classification Flowchart▼

Full ESC/EACTS algorithm for discordant AS parameters (AVA ≤1 cm² with low gradient). Begin at the top and follow the branching logic.

MG <40 mmHg & AVA <1 cm²
AVA-gradient discordance → assess SVi
MG ≥40 mmHg & AVA <1 cm²
High-Gradient Severe AS
↓
↓
SVi ≤35 ml/m²
Low Flow
SVi >35 ml/m²
Normal-Flow, Low-Gradient AS
HIGH GRADIENT SEVERE AS
AVA <1 cm²
MG ≥40 mmHg
SVi >/<35 ml/m²
LVEF >/<50%
↓
Check LVEF
LVEF <50%
LVEF ≥50%
NORMAL-FLOW LOW-GRADIENT AS
AVA <1 cm²
MG <40 mmHg
SVi >35 ml/m²
LVEF ≥50%
Verify echo sources of error
LVOT underestimation: compare measured vs predicted LVOTD; corroborate LVOT area (3D, MDCT)

Confirm low-flow: Teicholz, biplane Simpson, or 3D volumetric

Causes of low-flow: LV concentric remodelling, impaired longitudinal function, AF, amyloidosis, MR/MS, TR, RV dysfunction

Confirm low-gradient: multi-window interrogation (apical, right parasternal, suprasternal)
↓
↓
↓
CLASSIC LF-LG AS
AVA <1 cm²
MG <40 mmHg
SVi ≤35 ml/m²
LVEF <50%
PARADOXICAL LF-LG AS
AVA <1 cm²
MG <40 mmHg
SVi ≤35 ml/m²
LVEF ≥50%
Usually moderate AS — reassess carefully, exclude measurement error
↓
↓
DSE — Dobutamine Stress Echo
Low dose: up to 20 µg/kg/min
AVA ≥1 cm²
MG <40 mmHg
Pseudo-severe AS
AVA <1 cm²
MG ≥40 mmHg
Severe AS
AVA <1 cm²
MG <40 or ΔSV <20%
Indeterminate → AVAproj
If ΔSV 10–20%: Calculate AVAproj
AVAproj <1 cm² → Severe AS  ·  AVAproj ≥1 cm² → Pseudo-severe AS
Non-Contrast MDCT — AV Calcium Score
For paradoxical LF-LG AS and normal-flow LG AS
Below threshold
Men <2,000 AU
Women <1,200 AU
Non-severe AS
Above threshold
Men ≥2,000 AU
Women ≥1,200 AU
Severe AS
CT calcium thresholds above are from ESC/EACTS 2021 guidelines. Note: AHA/ACC 2021 uses slightly different thresholds (≥1600 AU men / ≥800 AU women for severe AS). Some centres use ≥3000 AU for very high likelihood.
Sources: ESC/EACTS 2021 VHD Guidelines (Vahanian et al.) · AHA/ACC 2021 VHD Guidelines · Baumgartner H et al. Eur Heart J. 2017;38:2739–91
Native Valves›Aortic Regurgitation
Aortic Regurgitation
AR — Qualitative▼
ParameterMild 1/4Moderate 2–3/4Severe 4/4
CW signal intensityIncomplete/faintDenseDense
Flow reversal – Desc AoBrief, early diastolicIntermediatePan-diastolic
Flow reversal – Abdo Ao——Pan-diastolic
AR pressure half-time (ms)>500200–500<200
Jet width of LVOT (%) **<25Intermediate≥65
VC-W (cm) **<0.30Intermediate≥0.6
PHT dependent on LV compliance · ** Nyquist limit 50–60 cm/s
AR — Quantitative▼
Parameter1/42/43/44/4
RV (ml)<3030–4445–59≥60
RF (%)<3030–3940–49≥50
EROA (cm²)<0.100.10–0.190.20–0.29≥0.30
Native Valves›Mitral Stenosis
Mitral Stenosis
MS Grading▼
ParameterMildModerateSevere
Mean gradient (mmHg)*<55–9≥10
MVA (cm²)>2.51.6–2.5<1.5
RVSP (mmHg)<3030–50>50
PHT (ms)<100100–149≥150
* At heart rates 60–80 bpm in sinus rhythm
Wilkins Score▼
Score ≤8 → likely good result · Score >8 → less likely good result (balloon valvuloplasty)
GradeMobilitySubvalvularThickeningCalcification
1Highly mobile, tips only restrictedMinimal below leafletsNear normal 4–5 mmSingle bright area
2Mid/base normal mobilityUp to 1/3 chordal lengthMid normal; margins 5–8 mmScattered at margins
3Forward mainly from baseTo distal 1/3 chordsEntire leaflet 5–8 mmInto mid-portion
4No/minimal forward movementExtensive to papillary musclesAll tissue >8–10 mmExtensive throughout
Padial Score▼
Score ≥10 → likely to develop severe MR post-valvuloplasty
GradeLeaflet Thickening (each scored separately)Commissural CalcificationSubvalvular
1Near normal (4–5 mm) or one thick segmentFibrosis/calcium in one commissureMinimal just below valve
2Evenly fibrotic/calcified; no thin areasBoth commissures mildly affectedUp to 1/3 chordal length
3Uneven; thinner segments mildly thickened 5–8 mmCalcium in both; one markedly affectedDistal 1/3 chordae
4Uneven; thinner segments near normal 4–5 mmBoth commissures markedly affectedExtensive to papillary muscle
Native Valves›Mitral Regurgitation
Mitral Regurgitation
MR — Qualitative▼
ParameterMild 1/4Moderate 2–3/4Severe 4/4
Transmitral PWA-dominantVariableE-dominant >1.5 m/s
Pulmonary venous PWSystolic dominanceSystolic bluntingSystolic reversal
MR CW intensityIncomplete/faintDenseDense
MR jet contour CWParabolicUsually parabolicEarly peaking / triangular
Jet area ratio (%)<4 cm² or <20% LAAVariable>10 cm² or >40% LAA
VC-W (cm)<0.300.30–0.69≥0.7
PISA radius (cm)No/minimal <0.4VariableLarge ≥0.9
Nyquist 50–60 cm/s for colour · PISA: baseline shift at Nyquist 40 cm/s · Higher VC cut-offs for eccentric jets (angle-correct)
MR — Quantitative▼
Parameter1/42/43/44/4
RV (ml)<3030–4445–59≥60
RF (%)<3030–3940–49≥50
EROA (cm²)<0.200.20–0.290.30–0.39≥0.40
Carpentier Functional Classification▼
TypeLeaflet MotionAnatomical Lesion
Type INormalAnnular dilation · Leaflet perforation · Cleft leaflet
Type II (Prolapse)IncreasedChordal/PM rupture · Chordal/PM elongation
Type IIIa (Rheumatic)Restricted systole & diastoleLeaflet thickening/retraction/calcification · Chordal/commissural fusion
Type IIIb (Ischaemic)Restricted systole onlyPM displacement · LV dilation · Leaflet tethering · Chordal thickening
Native Valves›Pulmonary Stenosis
Pulmonary Stenosis
PS Grading▼
ParameterMildModerateSevere
Peak velocity (m/s)<33–4>4
Max gradient (mmHg)<3636–64>64

PASP from RVSP

ObstructionFormula
Mild–moderatePASP = RVSP − mean PV gradient
Critical (rounded signal)PASP = RVSP − max PV gradient
Native Valves›Pulmonary Regurgitation
Pulmonary Regurgitation
PR — Qualitative▼
ParameterMildModerateSevere
Signal intensityIncomplete/faintDenseDense
Jet width (mm)<10 mmIntermediateWide at origin
Pan-diastolic branch PA reversal → moderate or more PR · P½t <100 ms → haemodynamically significant · Jet/RVOT annulus >40% → moderate or more
PR — Quantitative RF (%)▼
Mild <20Moderate 20–40Severe >40
Native Valves›Tricuspid Stenosis
Tricuspid Stenosis
TS Grading▼
ParameterMildModerateSevere
Mean Gradient (m/s)<22–4≥5
TVA (cm²)——≤1.0
Native Valves›Tricuspid Regurgitation
Tricuspid Regurgitation
TR — Qualitative▼
ParameterMildModerateSevere
Forward E velocity——≥65 cm/s
Signal intensityIncomplete/faintDenseDense
ContourParabolicUsually parabolicEarly peaking (V cut-off)
Hepatic veinSystolic dominanceSystolic bluntingSystolic flow reversal
Jet area (cm²) Nyquist 50–60<55–10>10
Flow convergence radius (cm) Nyquist 28≤0.50.6–0.9>0.9
Vena contracta (cm) Nyquist 50–60——≥0.7
TR — Quantitative▼
Parameter1/42/43/44/4
RV (ml)<3030–4445–59≥60
RF (%)<3030–3940–49≥50
EROA (cm²)<0.200.20–0.290.30–0.39≥0.40
Prosthetic›Prosthetic Aortic
Prosthetic Aortic Valve
Doppler Parameters — Mechanical & Bioprosthetic AVR▼
ParameterNormalPossible StenosisSignificant Stenosis
Peak velocity (m/s)<33–4>4
Mean gradient (mmHg)<2020–35>35
DPI≥0.300.25–0.29<0.25
EOA (cm²)>1.20.8–1.2<0.8
Jet contourTriangular, early peakingTriangular → intermediateRounded, symmetrical
Acceleration time (ms)<8080–100>100
Normal/near-normal stroke volume 50–70 ml assumed · More affected by flow when concomitant AR present
Patient-Prosthesis Mismatch (PPM)▼
Indexed EOA (cm²/m²)Normal >0.85Moderate 0.65–0.85Severe <0.65
Differentiating Elevated AVR Gradients▼
ParameterPP MismatchObstructionValve Geometry*High Output
Valve gradients↑↑↑↑
DPI (DVI)NormalReducedReducedNormal
EOANormalReducedReducedNormal
EOA IndexReducedReducedReducedNormal
Δ EOA/DPI vs baselineNoYesNoNo
Abnormal leaflet motionNoYesNoNo
* Most commonly in 19 mm and 21 mm bileaflet prostheses
Elevated Peak Prosthetic Aortic Velocity — Algorithm▼
Elevated Peak Prosthetic Aortic Jet Velocity Check: DVI (or DPI)  •  Jet contour  •  Acceleration time DVI value? ≥ 0.30 AT >100? YES PW sample too close to valve (esp. if CW ≥4 m/s) NO < 0.25 AT <100? YES PW sample too far apical (esp. CW 3–3.9 m/s) 0.25–0.29 Jet contour? Triangular Rounded Intermediate Possible Stenosis Triangular contour DVI 0.25–0.29 Indeterminate Intermediate contour Further imaging needed Significant Stenosis Rounded, symmetrical DVI < 0.25 If stenosis suspected: confirm EOA vs reference (if valve type/size known) Consider fluoroscopy + TEE for further assessment, especially bileaflet valves Paravalvular AR Best assessed from zoomed PSAX • Position just below native annulus (or apical stent end for TAVI) • Sum all jets
Source: Zoghbi WA, Jone PN, Chamsi-Pasha MA, et al. Guidelines for the Evaluation of Prosthetic Valve Function with Cardiovascular Imaging. J Am Soc Echocardiogr. 2024;37(2):2–63. Figure 13 — Algorithm for initial evaluation of elevated peak prosthetic aortic jet velocity incorporating DVI, jet contour, and acceleration time (AT).
Prosthetic›Prosthetic Mitral
Prosthetic Mitral Valve
Doppler Parameters — Prosthetic MVR▼
ParameterNormalPossible StenosisSignificant Stenosis
Peak velocity (m/s)<1.91.9–2.5>2.5
Mean gradient (mmHg)≤56–10>10
MVR Index<2.22.2–2.5>2.5
EOA (cm²)≥2.01.0–2.0<1.0
P½T (ms)<130130–200>200
Best specificity when majority of parameters agree · Also evaluate for ↑ flow, ↑ HR, PPM · Also abnormal with significant prosthetic MR
Prosthetic›Prosthetic Tricuspid
Prosthetic Tricuspid Valve
Doppler Parameters — Prosthetic TVR▼
ParameterBioprosthetic (Abnormal ≥)Mechanical (Abnormal ≥)
Peak velocity (m/s)≥2.1≥1.9
Mean gradient (mmHg)≥9≥6
P½t (ms)≥200≥130
EOA (cm²) / TVR Index<1.5<2.0
Average ≥5 cycles due to respiratory variation
Haemodynamics›Right Heart Haemo
Right Heart Haemodynamics
Pulmonary Hypertension Classification▼

RVSP / PASP

MildModerateSevere
40–54 mmHg55–64 mmHg≥65 mmHg

PVR

Normal <2 WUElevated >3 WU
PVR estimation not routinely recommended
PHTN Aetiology Differentiation▼

LH Disease

  • ↑ TR velocity
  • ↑ E/e'
  • ePLAR <0.25 m/s

Pulmonary Disease

  • ↑ TR velocity
  • E/e' low or normal
  • ePLAR >0.3 m/s
Formulas & Normal Values▼
ParameterFormulaNormal
RVSP / PASP4 × VTR² + RAP<40 mmHg
mPAPAcT>120: 79−(0.45×AcT)
AcT≤120: 90−(0.62×AcT)
<25 mmHg
PAEDP4 × VPR-ED² + RAP4–12 mmHg
🧮 RVSP / PASP Calculator▼
RVSP = 4 × VTR² + RAP
TR velocity (m/s)m/s
RAP (mmHg)
Enter values above
🧮 mPAP Calculator▼
AcT >120 ms: mPAP = 79 − (0.45 × AcT)
AcT ≤120 ms: mPAP = 90 − (0.62 × AcT)
RV AcT (ms)ms
Enter AcT above
AcT measured from RVOT PW Doppler — onset of flow to peak velocity · Mid-systolic notch may indicate PHTN even with AcT >120 ms
🧮 PAEDP Calculator▼
PAEDP = 4 × VPR-ED² + RAP
PR end-diastolic v (m/s)m/s
RAP (mmHg)
Enter values above
Normal PAEDP: 4–12 mmHg · PR end-diastolic velocity measured from CW or PW Doppler at end-diastole
Tools›Calculator
Quick Calculator
Inline calculation tools for common echo measurements
🧮 RVSP / PASP▼
RVSP = 4 × VTR² + RAP
VTR (m/s)m/s
RAP (mmHg)mmHg
Enter values above
🧮 AVA Continuity Equation▼
AVA = (LVOT CSA × LVOT VTI) / AV VTI
LVOT Ø (cm)cm
LVOT VTI (cm)cm
AV VTI (cm)cm
Enter values above
🧮 DSI (Dimensionless Severity Index)▼
DSI = LVOT VTI / AV VTI
LVOT VTI (cm)cm
AV VTI (cm)cm
Enter values above
🧮 PISA EROA (MR)▼
EROA = (2π × r² × Va) / VMR
PISA radius (cm)cm
Aliasing Va (cm/s)cm/s
Peak VMR (m/s)m/s
Enter values above
🧮 MR — Stroke Volume Method▼
SVMV = CSAMV × VTIMV
SVLVOT = CSALVOT × VTILVOT
RVol = SVMV − SVLVOT  ·  RF = RVol / SVMV

Mitral Annulus (total inflow)

MV annulus Ø (cm)cm
MV inflow VTI (cm)cm

LVOT (forward/systemic flow)

LVOT Ø (cm)cm
LVOT VTI (cm)cm
Enter values above
Use the larger valve annulus diameter measured in an orthogonal view; MV annulus is best measured in apical 4 or 2 chamber at annular hinge points. Assumes no concomitant AR or AS.
🧮 AR — Stroke Volume Method▼
SVLVOT = CSALVOT × VTILVOT
SVMV = CSAMV × VTIMV
RVol = SVLVOT − SVMV  ·  RF = RVol / SVLVOT

LVOT (total outflow, incl. regurgitant volume)

LVOT Ø (cm)cm
LVOT VTI (cm)cm

Mitral Annulus (forward flow)

MV annulus Ø (cm)cm
MV inflow VTI (cm)cm
Enter values above
LVOT represents total systolic outflow (forward + regurgitant volume); MV inflow represents net forward flow. Assumes no concomitant MR or MS.
🧮 Qp:Qs (Shunt Ratio)▼
Qp = CSARVOT/PA × VTIRVOT/PA  (pulmonary flow)
Qs = CSALVOT × VTILVOT  (systemic flow)
Qp:Qs = Qp / Qs

Pulmonary Flow (Qp) — RVOT/PA

RVOT/PA Ø (cm)cm
RVOT/PA VTI (cm)cm

Systemic Flow (Qs) — LVOT

LVOT Ø (cm)cm
LVOT VTI (cm)cm
Enter values above
Qp:Qs >1.5 generally considered haemodynamically significant left-to-right shunt · Qp:Qs <1.0 suggests right-to-left shunt · Measure RVOT just proximal to the pulmonary valve · For a PDA with reversed (right-to-left) flow, tick "Reverse" to report as Qs:Qp
🧮 mPAP from RV AcT▼
AcT>120: 79−(0.45×AcT)   AcT≤120: 90−(0.62×AcT)
RV AcT (ms)ms
Enter value above
🧮 RVSP from VSD▼
RVSP = SBP − 4 × VVSD²
SBP (mmHg)mmHg
VVSD (m/s)m/s
Enter values above
🧮 Respiratory Variation▼
Respiratory Variation (%) = (Expiration − Inspiration) / Expiration × 100

Used to assess haemodynamic significance of pericardial effusion (tamponade), constrictive physiology, or fluid responsiveness. Measure peak velocity in both expiration and inspiration.

Mitral Inflow

Expiratory E (cm/s)cm/s
Inspiratory E (cm/s)cm/s
Enter values above
Interpretation thresholds:
Mitral E: ≥25% variation → significant tamponade physiology
Constrictive pericarditis: mitral E ≥25% + septal bounce + annulus reversus
Tools›MAC Severity
Mitral Annular Calcification (MAC)
Assessed from parasternal short-axis at level of mitral annulus
MAC Grading▼
GradeDescription
MildFocal, limited echodensity; <1/3 annular circumference
ModerateMarked echodensity involving 1/3 to 1/2 of ring circumference
SevereMarked echodensity >1/2 annulus, or intrusion into LV inflow, or >4 mm thickness (AP direction, PSAX)
Tools›Generate Report
Generate Report
Enter measurements below to produce a formatted, printable echo report
⚡ Import Measurements▼

Paste or upload structured measurement data (e.g. exported from EchoPAC, ViewPoint, or another workstation) to auto-populate every field below and generate a graded report instantly. This is the integration point a vendor would map their own export format onto — see the schema reference at the bottom of this card.

or paste directly into the box
▼ View import field schema (for integration)
Patient & Study Information▼
Patient name
DOB / Age
Age (years)yrs
Sex
Height (cm)cm
Weight (kg)kg
BSA—
Study date
Heart ratebpm
Blood pressuremmHg
Indication
Sonographer
LV Structure & Function▼

Enter raw measurements — severity is auto-graded against ASE reference ranges (sex-specific where applicable) when you generate the report.

LVEDDcm
LVESDcm
IVScm
PWcm
LVEF%
Simpson's biplane volumes
LVEDVml
LVESVml
3D volumes
3D LVEDVml
3D LVESVml
Sex must be set above for LVEDD, LVESD, LVEF, and all volume grading — these thresholds differ by sex per ASE guidance. Volumes index to BSA automatically and are graded as indexed values (ml/m²), matching the Simpson's biplane and 3D reference tables.
Left Atrium▼
LA volume indexml/m²
LA strain (2D speckle-tracking)
Reservoir (PALS/LASr)%
Conduit (LAScd)%
Contractile (LASct)%
Reservoir strain (LASr/PALS) is graded against the 2025 ASE Strain Consensus normal ranges: Normal ≥30%, borderline 23–30%, abnormal <23%. Conduit and contractile strain are reported as reference values only — no clinical severity cut-offs are yet established for these.
Aorta▼

Aortic root and ascending aorta index automatically to BSA as you type. Severity is graded against sex-specific ASE dilation thresholds when you generate the report.

Aortic root (SoV)cm
Sinotubular junctioncm
Ascending aortacm
Aortic archcm
Descending aortacm
Aortic root Z-score (Marfan Foundation adult formula, age + sex + BSA adjusted) — computed automatically from the patient details and aortic root value above.
Enter age, sex, height, weight, and aortic root above
LVOT & Flow

LVOT diameter feeds stroke volume, cardiac output, AVA (continuity equation), and DSI elsewhere in this report.

LVOT diametercm
LVOT VTIcm
LVOT CSA—
Stroke volume—
Cardiac output—
Diastolic Function▼

Grade is computed automatically from these values using the same algorithm as the Diastolic Function tool.

E velocitycm/s
A velocitycm/s
E/A ratio—
TR velocitym/s
e' septalcm/s
e' lateralcm/s
Average E/e'—
Secondary params positive?PV S/D ≤0.67, LARS ≤18%, or LAVi >34 — used only if primary variables are indeterminate
RV Size & Function▼
Basal RV diametercm
TAPSEmm
RV size and function are auto-graded from basal diameter (normal 2.5–4.1 cm) and TAPSE (normal ≥17 mm).
Valve Findings▼

Each valve is graded from its primary quantitative ASE criterion. Leave blank to omit a valve from the report.

AS — Peak velocitym/s
AS — AV VTIcm
AR — EROAcm²
MS — Mean gradientmmHg
MR — EROAcm²
TR — EROAcm²
PS — Peak velocitym/s
PR — Regurgitant fraction%
Haemodynamics & Pericardium▼
IVC diametercm
RAP estimate
Pericardial effusion
PASP is computed automatically as 4 × TR velocity² + RAP, using the TR velocity entered in Diastolic Function above.
Impression▼

Auto-drafted from the findings above once you generate the report — edit freely before printing.

About›References
References & Source Guidelines
All clinical content in this reference tool is derived from the following ASE and collaborative society guidelines
Left Ventricular Function & Diastolic Function▼
LV Diastolic Function
Recommendations for the Evaluation of Left Ventricular Diastolic Function by Echocardiography and for Heart Failure with Preserved Ejection Fraction Diagnosis: An Update from the American Society of Echocardiography
Nagueh SF, Sanborn DY, Oh JK, et al.
J Am Soc Echocardiogr. 2025;38(7):537–569
Supersedes the 2016 ASE/EACVI guideline. Introduces revised 3-variable algorithm, grading (Normal DF, Grade 1–3), special population algorithms for AF, PHTN, and HTX, and new HFpEF diagnostic criteria.
View on JASE →
Prior Guideline
Recommendations for the Evaluation of Left Ventricular Diastolic Function by Echocardiography: An Update from the American Society of Echocardiography and the European Association of Cardiovascular Imaging
Nagueh SF, Smiseth OA, Appleton CP, et al.
J Am Soc Echocardiogr. 2016;29(4):277–314
Previous 4-variable algorithm (e', E/e', TR velocity, LAVi). Superseded by the 2025 ASE update.
Chamber Quantification▼
LV & RV Dimensions
Recommendations for Cardiac Chamber Quantification by Echocardiography in Adults: An Update from the American Society of Echocardiography and the European Association of Cardiovascular Imaging
Lang RM, Badano LP, Mor-Avi V, et al.
J Am Soc Echocardiogr. 2015;28(1):1–39
Source for LV volumes (Simpson's biplane, 3D), EF grading by sex, LV cavity dimensions/mass (linear and 2D), LA volume, RV linear/area/3D dimensions, RA volume, and aortic root measurements.
View on JASE →
Strain Imaging▼
LA Strain (PALS/Reservoir, Conduit, Contractile)
Clinical Applications of Strain Echocardiography: A Clinical Consensus Statement from the American Society of Echocardiography Developed in Collaboration with the European Association of Cardiovascular Imaging
Thomas JD, Edvardsen T, Abraham T, et al.
J Am Soc Echocardiogr. 2025
Source for LA reservoir strain (LASr/PALS), conduit strain (LAScd), and contractile strain (LASct) normal values, from an individual-patient meta-analysis of 2,542 healthy adults across 40 studies. Also source for the LASr <18% cut-off used in estimating elevated LV filling pressure.
View on ASE →
Right Heart & Pulmonary Hypertension▼
RV Function & PHTN
Guidelines for the Echocardiographic Assessment of the Right Heart in Adults and Special Considerations in Pulmonary Hypertension: Recommendations from the American Society of Echocardiography
Mukherjee M, Rudski LG, Addetia K, et al.
J Am Soc Echocardiogr. 2025;38(3):1–(in press)
Source for RV size (basal, mid, length, RVOT, wall thickness), RV systolic function (TAPSE, FAC, DTI S', 3D RVEF, MPI, free wall strain), RV diastolic function grading, RA volume, RAP estimation (IVC method), RVSP/PASP, mPAP formulas, PVR, and PHTN classification.
View on JASE →
Prior Guideline
Guidelines for the Echocardiographic Assessment of the Right Heart in Adults: A Report from the American Society of Echocardiography
Rudski LG, Lai WW, Afilalo J, et al.
J Am Soc Echocardiogr. 2010;23(7):685–713
Foundational right heart guideline; superseded by the 2025 update above.
Native Valve Regurgitation▼
AR, MR, TR, PR
Recommendations for Noninvasive Evaluation of Native Valvular Regurgitation: A Report from the American Society of Echocardiography Developed in Collaboration with the Society for Cardiovascular Magnetic Resonance
Zoghbi WA, Adams D, Bonow RO, et al.
J Am Soc Echocardiogr. 2017;30(4):303–371
Source for qualitative and quantitative grading of AR, MR, TR, PR, PS, and TS. Includes Carpentier classification for MR, VC-W, PISA EROA, RVol, RF thresholds, flow reversal criteria, and CW signal density assessment.
View on JASE →
Aortic Stenosis▼
AS Grading
AHA/ACC 2014 Guideline for the Management of Patients with Valvular Heart Disease
Nishimura RA, Otto CM, Bonow RO, et al.
J Am Coll Cardiol. 2014;63(22):e57–185 (updated 2021)
Source for AHA/ACC AS severity thresholds (peak velocity, mean gradient, AVA, indexed AVA, DSI). ESC thresholds (mean gradient >50 mmHg for severe) sourced from 2021 ESC/EACTS VHD guidelines.
Mitral Stenosis▼
MS Grading & Scoring
ASE/ACC/AHA Guidelines for the Management of Patients with Valvular Heart Disease: Echocardiographic Assessment of Mitral Stenosis
Baumgartner H, Hung J, Bermejo J, et al.
J Am Soc Echocardiogr. 2009;22(1):1–23
Source for MS grading (mean gradient, MVA, RVSP, PHT), Wilkins score (mobility, subvalvular thickening, leaflet thickening, calcification), and Padial score. Also sourced from AHA/ACC 2021 VHD guidelines for updated MVA thresholds.
Prosthetic Valve Assessment▼
AVR / MVR / TVR
Guidelines for the Evaluation of Prosthetic Valve Function with Cardiovascular Imaging: A Report from the American Society of Echocardiography Developed in Collaboration with the Society for Cardiovascular Magnetic Resonance and the Society of Cardiovascular Computed Tomography
Zoghbi WA, Jone PN, Chamsi-Pasha MA, et al.
J Am Soc Echocardiogr. 2024;37(2):2–63
Source for all prosthetic valve Doppler parameters (AVR: peak velocity, mean gradient, DPI/DVI, EOA, jet contour, AT; MVR: peak velocity, mean gradient, MVR index, EOA, P½T; TVR: bioprosthetic vs mechanical thresholds), PPM, differential diagnosis algorithm for elevated prosthetic aortic gradients, and paravalvular AR assessment.
View on JASE →
Aortic Root & Great Vessels▼
Aortic Measurements
Recommendations for Cardiac Chamber Quantification by Echocardiography in Adults (see above) — Aortic Root Section
Lang RM, Badano LP, Mor-Avi V, et al. J Am Soc Echocardiogr. 2015;28(1):1–39
Supplemented by: ASE Comprehensive Echocardiography (2nd Ed.) — Aorta Chapter
Source for aortic annulus, sinus of Valsalva, STJ, and proximal ascending aorta absolute and indexed reference values by sex. Measurement methodology (leading edge to leading edge, end diastole; except annulus: inner edge to inner edge, mid-systole).
How to Cite This Tool▼

This reference tool is a clinical summary compiled from the guidelines listed above for point-of-care use by cardiac sonographers and echocardiologists. It is not an independent publication. Users should refer to the primary source guidelines for full methodology, limitations, and clinical context before applying values in individual patient care.

Content last reviewed: June 2026 · Primary source: ASE Guidelines (various years as listed above) · For discrepancies, the most recently published ASE guideline takes precedence.